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Lattice Boltzmann Simulation of Depth-Averaged Models in Flow Hydraulics.

Klar, A. Seaid; M. Thoemmes, G.; Seaid, M.

Authors

A. Seaid Klar

G. M. Thoemmes



Abstract

We apply a lattice Boltzmann method (LBM) for the simulation of depth-averaged models in flow hydraulics and dispersion of pollutants. The mathematical equations for these models can be obtained from the incompressible Navier-Stokes equations under the assumptions that the vertical scale is much smaller than any typical horizontal scale and the pressure is hydrostatic. The effects of bed slope, bed friction, Coriolis forces and wind stresses are also accounted for in our simulations. Our aim is to develop a simple and accurate representation of the source terms in order to simulate practical shallow water flows without relying on upwind algorithms or Riemann problem solvers. For the transport of pollutants, a depth-averaged convection-diffusion equation is used. We validate the algorithm in problems where analytical solutions are available. Furthermore, we test the algorithm in the case of a practical application by simulating the tidal flow and pollutant transport in the Strait of Gibraltar. The focus is to examine the performance of the LBM for irregular geometry with complex bathymetry. The method demonstrates its capability to capture the main flow features. Obviously, some of the conclusions in the current work are specific to the employed implementation of the LBM. For instance, the LBM in its implementation as described in the current study failed to approximate numerical solutions for hydraulic problems involving a Froude number larger than the unity.

Citation

Klar, A. S., M. Thoemmes, G., & Seaid, M. (2008). Lattice Boltzmann Simulation of Depth-Averaged Models in Flow Hydraulics. International Journal of Computational Fluid Dynamics, 22(7), 507 - 522. https://doi.org/10.1080/10618560802243838

Journal Article Type Article
Acceptance Date May 29, 2008
Online Publication Date Jul 24, 2008
Publication Date 2008
Journal International Journal of Computational Fluid Dynamics
Print ISSN 1061-8562
Electronic ISSN 1029-0257
Publisher Taylor and Francis Group
Peer Reviewed Peer Reviewed
Volume 22
Issue 7
Pages 507 - 522
DOI https://doi.org/10.1080/10618560802243838
Keywords lattice Boltzmann method; shallow water equations; pollutant transport; Strait of Gibraltar
Public URL https://durham-repository.worktribe.com/output/1560751
Publisher URL http://www.informaworld.com/smpp/content~db=all?content=10.1080/10618560802243838